The role of ATP-binding cassette subfamily A in the etiology of Alzheimer's disease

被引:37
作者
Bossaerts, Liene [1 ]
Cacace, Rita [1 ]
Van Broeckhoven, Christine [1 ,2 ]
机构
[1] VIB Ctr Mol Neurol, Neurodegenerat Brain Dis Grp, Antwerp, Belgium
[2] Univ Antwerp CDE, Dept Biomed Sci, Univ Pl 1, B-2610 Antwerp, Belgium
关键词
ATP-binding cassette transporter; ABCA1; ABCA2; ABCA5; ABCA7; Alzheimer's disease; Amyloid beta; Cholesterol homeostasis; REVERSE CHOLESTEROL TRANSPORT; AMYLOID-BETA PRODUCTION; APOLIPOPROTEIN-E; MOUSE MODEL; A-BETA; CELLULAR CHOLESTEROL; ENHANCE PHAGOCYTOSIS; GENETIC ASSOCIATION; SERUM-CHOLESTEROL; ABC TRANSPORTERS;
D O I
10.1186/s13024-022-00536-w
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Alzheimer's disease (AD) is the leading cause of dementia, clinically characterized by memory deficits and progressive cognitive decline. Despite decades of research effective therapies are lacking, and a large part of the genetic heritability remains unidentified. ABCA7 and ABCA1, members of the ATP-binding cassette subfamily A (ABCA), were identified as AD risk genes in genome-wide association studies. Nevertheless, genetic and/or functional studies propose a link between AD and two other members of the ABCA subclass, i.e., ABCA2 and ABCA5. Main body: Changes in expression or dysfunction of these transporters were found to increase amyloid beta levels. This might be related to the common role of ABCA transporters in cellular cholesterol homeostasis, for which a prominent role in AD development has been suggested. In this review, we provide a comprehensive overview and discussion on the contribution of the ABCA subfamily to the etiopathogenesis of AD. Conclusions: A better understanding of the function and identification of disease-associated genetic variants in ABCA transporters can contribute to the development of novel therapeutic strategies for AD.
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页数:12
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共 157 条
[1]   ABCA7, a molecule with unknown function [J].
Abe-Dohmae, S ;
Ueda, K ;
Yokoyama, S .
FEBS LETTERS, 2006, 580 (04) :1178-1182
[2]   Human ABCA7 supports apolipoprotein-mediated release of cellular cholesterol and phospholipid to generate high density lipoprotein [J].
Abe-Dohmae, S ;
Ikeda, Y ;
Matsuo, M ;
Hayashi, M ;
Okuhira, K ;
Ueda, K ;
Yokoyama, S .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (01) :604-611
[3]   ABCA7 haplodeficiency disturbs microglial immune responses in the mouse brain [J].
Aikawa, Tomonori ;
Ren, Yingxue ;
Yamazaki, Yu ;
Tachibana, Masaya ;
Johnson, Madeleine R. ;
Anderson, Casey T. ;
Martens, Yuka A. ;
Holm, Marie-Louise ;
Asmann, Yan W. ;
Saito, Takashi ;
Saido, Takaomi C. ;
Fitzgerald, Michael L. ;
Bu, Guojun ;
Kanekiyo, Takahisa .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2019, 116 (47) :23790-23796
[4]   A photoreceptor cell-specific ATP-binding transporter gene (ABCR) is mutated in recessive Stargardt macular dystrophy [J].
Allikmets, R ;
Singh, N ;
Sun, H ;
Shroyer, NE ;
Hutchinson, A ;
Chidambaram, A ;
Gerrard, B ;
Baird, L ;
Stauffer, D ;
Peiffer, A ;
Rattner, A ;
Smallwood, P ;
Li, YX ;
Anderson, KL ;
Lewis, RA ;
Nathans, J ;
Leppert, M ;
Dean, M ;
Lupski, JR .
NATURE GENETICS, 1997, 15 (03) :236-246
[5]   Further evidence for an association of ABCR alleles with age-related macular degeneration [J].
Allikmets, R .
AMERICAN JOURNAL OF HUMAN GENETICS, 2000, 67 (02) :487-491
[6]   2021 Alzheimer's disease facts and figures [J].
不详 .
ALZHEIMERS & DEMENTIA, 2021, 17 (03) :327-406
[7]   Updating the Evidence on the Association between Serum Cholesterol and Risk of Late-Life Dementia: Review and Meta-Analysis [J].
Anstey, Kaarin J. ;
Ashby-Mitchell, Kimberly ;
Peters, Ruth .
JOURNAL OF ALZHEIMERS DISEASE, 2017, 56 (01) :215-228
[8]  
Arnould I., 2001, GeneScreen, V1, P157
[9]   Rare genetic variation implicated in non-Hispanic white families with Alzheimer disease [J].
Beecham, Gary W. ;
Vardarajan, Badri ;
Blue, Elizabeth ;
Bush, William ;
Jaworski, James ;
Barral, Sandra ;
DeStefano, Anita ;
Hamilton-Nelson, Kara ;
Kunkle, Brian ;
Martin, Eden R. ;
Naj, Adam ;
Rajabli, Farid ;
Reitz, Christiane ;
Thornton, Timothy ;
Van Duijn, Cornelia ;
Goate, Allison ;
Seshadri, Sudha ;
Farrer, Lindsaya ;
Boerwinkle, Eric ;
Schellenberg, Gerard ;
Haines, Jonathan L. ;
Wijsman, Ellen ;
Mayeux, Richard ;
Pericak-Vance, Margaret A. .
NEUROLOGY-GENETICS, 2018, 4 (06)
[10]  
Bellenguez C, 2020, NEW INSIGHTS GENETIC, V2020, DOI [10.01.20200659, 10.1101/2020.10.01.20200659, DOI 10.1101/2020.10.01.20200659]